Takata Toshikazu
School of Materials and Chemical Technology, Tokyo Institute of Technology, Nagatsuta-cho, Yokohama 226-8503, Japan.
ACS Cent Sci. 2020 Feb 26;6(2):129-143. doi: 10.1021/acscentsci.0c00002. Epub 2020 Feb 17.
The synthesis and dynamic nature of macromolecular systems controlled by rotaxane macromolecular switches are introduced to discuss the significance of rotaxane linking of polymer chains and its topological switching. Macromolecular switches have been synthesized from macromolecular [2]rotaxanes (M2Rs) using -ammonium salt/crown ether couples. The successful synthesis of M2Rs possessing a single polymer axle and one crown ether wheel, constituting a key component of the macromolecular switch, has allowed us to develop various unique applications such as the development of topology-transformable polymers. Polymer topological transformations (e.g., linear-star and linear-cyclic) are achieved using rotaxane-linked polymers and rotaxane macromolecular switches. The pronounced dynamic nature of these polymer systems is sufficiently interesting to design sophisticated stimuli-responsive molecules, polymers, and materials.
介绍了由轮烷大分子开关控制的大分子系统的合成及其动态性质,以讨论聚合物链的轮烷连接及其拓扑转换的意义。使用铵盐/冠醚对从大分子[2]轮烷(M2R)合成了大分子开关。成功合成了具有单个聚合物轴和一个冠醚轮的M2R,这是大分子开关的关键组成部分,使我们能够开发各种独特的应用,如拓扑可转换聚合物的开发。使用轮烷连接的聚合物和轮烷大分子开关实现了聚合物拓扑转换(例如,线性-星型和线性-环状)。这些聚合物系统显著的动态性质对于设计复杂的刺激响应分子、聚合物和材料来说足够有趣。